We determine the second, third, and fourth virial coefficients appearing in the density expansion of the osmotic pressure of a monodisperse polymer solution in good-solvent conditions. Using the expected large-concentration behavior, we extrapolate the low-density expansion outside the dilute regime, obtaining the osmotic pressure for any concentration in the semidilute region. Comparison with field-theoretical predictions and experimental data shows that the obtained expression is quite accurate. The error is approximately 1-2% below the overlap concentration and rises at most to 5-10% in the limit of very large polymer concentrations
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic second virial coefficient A2 of nonathermal polymer solutions is discussed for a simple ...
We determine the second, third, and fourth virial coefficients appearing in the density expansion o...
We determine the second, third, and fourth virial coefficients appearing in the density expansion of...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
We consider the lattice Domb-Joyce model at a value of the coupling for which scaling corrections ap...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
The osmotic pressure of polyelectrolyte solutions as a function of concentration has been calculated...
We calculate the thermodynamic scaling function of a polymer solution in the good solvent regime. Th...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
We calculate the thermodynamic scaling function of a polymer solution in the good solvent regime. Th...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic second virial coefficient A2 of nonathermal polymer solutions is discussed for a simple ...
We determine the second, third, and fourth virial coefficients appearing in the density expansion o...
We determine the second, third, and fourth virial coefficients appearing in the density expansion of...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
We determine the density expansion of the radius of gyration, of the hydrodynamic radius, and of the...
We consider the lattice Domb-Joyce model at a value of the coupling for which scaling corrections ap...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
We propose simple expressions II/IIo = 1 + and (omega/omega(ex))(3 alpha-1) and (delta(0)/delta)(2) ...
The osmotic pressure of polyelectrolyte solutions as a function of concentration has been calculated...
We calculate the thermodynamic scaling function of a polymer solution in the good solvent regime. Th...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
We calculate the thermodynamic scaling function of a polymer solution in the good solvent regime. Th...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic pressure P of equilibrium polymers (EP) in a good solvent is investigated by means of an...
The osmotic second virial coefficient A2 of nonathermal polymer solutions is discussed for a simple ...